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Preparation and mechanical characterization of dense and porous zirconia produced by gel casting with gelatin as a gelling agent

机译:以明胶为胶凝剂的凝胶流延制备的致密多孔氧化锆的制备及力学性能

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摘要

A modified gel casting procedure based on a natural gelatin for food industry and commercial polyethylene spheres as pore formers was successfully exploited to produce dense and porous ceramic bodies made of yttria stabilized tetragonal zirconia polycrystal (Y-TZP). Vickers and Knoop microhardness, elastic modulus and fracture toughness measurements on dense samples obtained by experimental investigation closely matched results found in the literature for similar materials. However, after a careful analysis of obtained results, no indentation size effect and a lower scattering of experimental data from low load indentations were observed, in comparison with literature. Mechanical testing of porous samples (with reproducible values of porosity of about 40 percent) evidenced a high scattering of compressive strength values, suggesting that the uneven distribution of cavities in the material or the presence of defects from the agglomeration of pore forming agents could have a more direct influence on the mechanical properties of such materials than the absolute value of porosity.
机译:以食品工业和商业聚乙烯球体为天然成孔剂的天然明胶为基础的改良凝胶浇铸工艺已成功地用于生产由氧化钇稳定的四方氧化锆多晶体(Y-TZP)制成的致密且多孔的陶瓷体。通过实验研究获得的致密样品的维氏和努氏显微硬度,弹性模量和断裂韧性测量结果与相似材料的文献结果十分吻合。然而,在对获得的结果进行仔细分析之后,与文献相比,没有观察到压痕尺寸效应和低载荷压痕实验数据的较低散射。对多孔样品的机械测试(孔隙度的可再现值约为40%)表明,抗压强度值有很高的分散性,这表明材料中空腔的分布不均匀或成孔剂附聚引起的缺陷的存在可能会与孔隙率的绝对值相比,对此类材料的机械性能的直接影响更大。

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